Magnetic nanostructures (MNS) have become the subject of intense
interest due to their superparamagnetic properties and consequently
their potential uses in medical diagnostics and therapeutics. In this
study, monodisperse magnetite MNSs were synthesized via thermal
decomposition of iron(III) acetylacetonate and transferred to aqueous
solution using 11-aminoundecanoic acid as the surfactant....
Semiconductor oxides are important materials in gas-detection systems
and can be improved by enhancing the sensitivity and selectivity of
oxide sensors to specific gases. This research investigates the effect of
palladium dopant (Pd) on the hydrogen gas-sensing ability of ZnO 2-D
nanostructures. Photolithography was used to pattern electrodes on
various...
There is a continuing need for patterning
multifunctional materials to harness their
features and explore synergy among
diverse properties and phenomena. Soft
lithography, among various patterning
techniques, is a versatile method that can
generate inorganic patterns in a parallel
mode. Experimentation was performed
making use of flexible soft lithography to...
In this study attention was focused on a
templated fabrication of Au nanotubular
structures that could carry a highly magnetic
entity such as cobalt. In brief, experimentation
was performed to create Co@Au
core-shell nanorods of different lengths. The
preliminary core-shell structures were first
characterized using x-ray diffraction (XRD),
scanning electron...
The broad-based implementation of thermoelectric materials in converting heat to electricity hinges on the achievement of high conversion efficiency. Here we demonstrate a thermoelectric figure of merit ZT of 2.5 at 923 K by the cumulative integration of several performance-enhancing concepts in a single material system. Using non-equilibrium processing we show...